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生态系统演替过程中的共生体动态:共生的植物和丛枝菌根真菌群落

Symbiont dynamics during ecosystem succession: co-occurring plant and arbuscular mycorrhizal fungal communities.

作者信息

García de León David, Moora Mari, Öpik Maarja, Neuenkamp Lena, Gerz Maret, Jairus Teele, Vasar Martti, Bueno C Guillermo, Davison John, Zobel Martin

机构信息

Department of Botany, Institute of Ecology and Earth Sciences, University of Tartu, Tartu 51005, Estonia

Department of Botany, Institute of Ecology and Earth Sciences, University of Tartu, Tartu 51005, Estonia.

出版信息

FEMS Microbiol Ecol. 2016 Jul;92(7). doi: 10.1093/femsec/fiw097. Epub 2016 May 8.

Abstract

Although mycorrhizas are expected to play a key role in community assembly during ecological succession, little is known about the dynamics of the symbiotic partners in natural systems. For instance, it is unclear how efficiently plants and arbuscular mycorrhizal (AM) fungi disperse into early successional ecosystems, and which, if either, symbiotic partner drives successional dynamics. This study describes the dynamics of plant and AM fungal communities, assesses correlation in the composition of plant and AM fungal communities and compares dispersal limitation of plants and AM fungi during succession. We studied gravel pits 20 and 50 years post abandonment and undisturbed grasslands in Western Estonia. The composition of plant and AM fungal communities was strongly correlated, and the strength of the correlation remained unchanged as succession progressed, indicating a stable dependence among mycorrhizal plants and AM fungi. A relatively high proportion of the AM fungal taxon pool was present in early successional sites, in comparison with the respective fraction of plants. These results suggest that AM fungi arrived faster than plants and may thus drive vegetation dynamics along secondary vegetation succession.

摘要

尽管菌根预计在生态演替过程中的群落组装中发挥关键作用,但对于自然系统中共生伙伴的动态变化却知之甚少。例如,尚不清楚植物和丛枝菌根(AM)真菌向早期演替生态系统扩散的效率如何,以及共生伙伴中的哪一方(如果有一方的话)驱动着演替动态。本研究描述了植物和AM真菌群落的动态变化,评估了植物和AM真菌群落组成的相关性,并比较了演替过程中植物和AM真菌的扩散限制。我们研究了爱沙尼亚西部弃耕20年和50年的砾石坑以及未受干扰的草地。植物和AM真菌群落的组成密切相关,并且随着演替的推进,这种相关性的强度保持不变,这表明菌根植物和AM真菌之间存在稳定的依赖关系。与植物的相应比例相比,相对较高比例的AM真菌分类群库存在于早期演替地点。这些结果表明,AM真菌比植物到达得更快,因此可能在次生植被演替过程中驱动植被动态变化。

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